Hu C Q, Sturtevant J M, Thomson J A, Erickson R E, Pace C N
Department of Chemistry, Yale University, New Haven, Connecticut 06511.
Biochemistry. 1992 May 26;31(20):4876-82. doi: 10.1021/bi00135a019.
Differential scanning calorimetry has been used to investigate the thermodynamics of denaturation of ribonuclease T1 as a function of pH over the pH range 2-10, and as a function of NaCl and MgCl2 concentration. At pH 7 in 30 mM PIPES buffer, the thermodynamic parameters are as follows: melting temperature, T1/2 = 48.9 +/- 0.1 degrees C; enthalpy change, delta H = 95.5 +/- 0.9 kcal mol-1; heat capacity change, delta Cp = 1.59 kcal mol-1 K-1; free energy change at 25 degrees C, delta G degrees (25 degrees C) = 5.6 kcal mol-1. Both T1/2 = 56.5 degrees C and delta H = 106.1 kcal mol-1 are maximal near pH 5. The conformational stability of ribonuclease T1 is increased by 3.0 kcal/mol in the presence of 0.6 M NaCl or 0.3 M MgCl2. This stabilization results mainly from the preferential binding of cations to the folded conformation of the protein. The estimates of the conformational stability of ribonuclease T1 from differential scanning calorimetry are shown to be in remarkably good agreement with estimates derived from an analysis of urea denaturation curves.
差示扫描量热法已被用于研究核糖核酸酶T1在pH值范围为2至10时变性的热力学,以及作为NaCl和MgCl2浓度的函数时变性的热力学。在30 mM PIPES缓冲液中pH值为7时,热力学参数如下:熔解温度,T1/2 = 48.9±0.1℃;焓变,ΔH = 95.5±0.9 kcal mol-1;热容变化,ΔCp = 1.59 kcal mol-1 K-1;25℃时的自由能变化,ΔG°(25℃) = 5.6 kcal mol-1。T1/2 = 56.5℃和ΔH = 106.1 kcal mol-1在pH值接近5时均达到最大值。在0.6 M NaCl或0.3 M MgCl2存在下,核糖核酸酶T1的构象稳定性增加3.0 kcal/mol。这种稳定作用主要源于阳离子优先结合到蛋白质的折叠构象上。差示扫描量热法对核糖核酸酶T1构象稳定性的估计与从尿素变性曲线分析得出的估计结果非常吻合。